
Donghui Li is currently a lecture at the School of Materials & Microelectronics at Wuhan University of Technology. He received his Ph.D in Materials Science from Wuhan University of Technology in 2022. He then joined the Centre for Integrated Semiconductor Materials (CISM) at Swansea University, UK, as a postdoctoral researcher, where he worked until 2025 on semiconductor materials and devices under the supervision of Professor Paul Meredith, Director of CISM. His research interests include molecular semiconductors, device integration, and thin-film deposition processes.
Selective Publications:
[1] Donghui Li, Nan Deng, Yiwei Fu, Chuanhang Guo, Bojun Zhou, Liang Wang, Jing Zhou, Dan Liu, WeiLi, Kai Wang, Yanming Sun, Tao Wang. Fibrillization of Non-Fullerene Acceptors Enables 19% Efficiency Pseudo‐Bulk Heterojunction Organic Solar Cells. Advanced Materials, 2023, 35: 2208211.
[2] Donghui Li, Austin M Kay, Drew B Riley, Oskar J Sandberg, Ardalan Armin, Paul Meredith. Layer-by-Layer Processed Pseudo-bilayer Heterojunctions Advance the Performance of Organic Solar Cells. Advanced Energy Materials, 2025, 37: 2500816.
[3] Donghui Li, Liang Wang, Chuanhang Guo, Yating Liu, Bojun Zhou, Yiwei Fu, Jing Zhou, DanLiu, Wei Li, Tao Wang. Co-crystallization of Fibrillar Polymer Donors for Efficient Ternary Organic Solar Cells. ACS Materials Letters, 2023, 5:2065-2073.
[4] Donghui Li, Chuanhang Guo, Xue Zhang, Baocai Du, Cong Yu, Pang Wang, Shili Cheng, LiangWang, Jinlong Cai, Hui Wang, Dan Liu, Huifeng Yao, Yanming Sun, Jianhui Hou, Tao Wang. Non-fullerene Acceptor Pre-aggregates Enable High Efficiency Pseudo-Bulk Heterojunction Organic Solar Cells. Science China Chemistry, 2022,65: 373-381.
[5] Donghui Li, Chuanhang Guo, Xue Zhang, Baocai Du, Pang Wang, Shili Cheng, Jinlong Cai, HuiWang, Dan Liu, Huifeng Yao, Jianhui Hou, Tao Wang. Heating Induced Aggregation Control for Efficient Sequential-cast Organic Solar Cells. Aggregate, 2021, 3:e104.
[6] Donghui Li, Xue Zhang, Dan Liu, Tao Wang. Aggregation of Non-fullerene Acceptors in Organic Solar Cells. Journal of Materials Chemistry A, 2020, 8: 15607-15619.
[7] Donghui Li, Xiaolong Chen, Jinglong Cai, Wei Li, Mengxue Chen, Yuchao Mao, Baocai Du, Joel A Smith, Rachel C Kilbride, Mary E O’Kane, Xue Zhang, Yuan Zhuang, Pang Wang, Hui Wang, Dan Liu, Richard A L Jones, David G Lidzey, Tao Wang. Non-fullerene Acceptor Fibrils Enable Efficient Ternary Organic Solar Cells with 16.6% Efficiency. Science China Chemistry, 2020, 63: 1461-1468.
[8] Chuanhang Guo, Donghui Li, Liang Wang, Baocai Du, Zhi‐Xi Liu, Ziqiu Shen, Pang Wang, Xue Zhang, Jinlong Cai, Shili Cheng, Cong Yu, Hui Wang, Dan Liu, Chang‐Zhi Li, Tao Wang. Cold-Aging and Solvent Vapor Mediated Aggregation Control toward 18% Efficiency Binary Organic Solar Cells. Advanced Energy Materials, 2021, 11: 2102000.
[9] Yujie Yang, Donghui Li, Jinlong Cai, Hui Wang, Chuanhang Guo, ShangWen, Wei Li, Tao Wang, Dan Liu. Enhanced Photocatalytic Hydrogen Evolution from Organic Ternary Heterojunction Nanoparticles Featuring a Compact Alloy-Like Phase. Advanced Functional Materials, 2023, 33: 2209643.
[10] Jing Zhou, Donghui Li, Liang Wang, Xinying Zhang, Nan Deng, Chuanhang Guo, Chen Chen, Zirui Gan, Chenhao Liu, Wei Sun, Dan Liu, Wei Li, Zhe Li, Kai Wang, Tao Wang. Bicontinuous Donor and Acceptor Fibril Networks Enable 19.2% Efficiency Pseudo‐bulk Heterojunction Organic Solar Cells. Interdisciplinary Materials, 2023, 2: 866-875.
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